簡易檢索 / 詳目顯示

研究生: 侯良政
LIANG-CHENG HOU
論文名稱: 同步整流式返馳式轉換器之研製
Realization Study of a Flyback Converter with Synchronous Rectification
指導教授: 羅有綱
Yu-kang Lo
謝冠群
Guan-chyun Hsieh
口試委員: 蔡清池
Ching.chih Tsai
王見銘
Jian-ming Wang
學位類別: 碩士
Master
系所名稱: 電資學院 - 電子工程系
Department of Electronic and Computer Engineering
論文出版年: 2007
畢業學年度: 95
語文別: 中文
論文頁數: 83
中文關鍵詞: 返馳式轉換器、同步整流
外文關鍵詞: flyback converter, synchronous rectification
相關次數: 點閱:168下載:14
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報

在現今的工業界中,返馳式轉換器架構一直是兩百瓦以下轉換器的首選。它的價格低廉,架構又簡單,以致成為它受歡迎的原因。對於高頻切換式電源轉換器來說,功率損耗大部分集中在二次側二極體整流器以及一次側功率晶體導通和截止之切換期間。本論文設計出一台120W之同步整流輸出之返馳式轉換器,此架構適用於低輸出電壓高輸出電流的轉換器,可以讓二次側整流器的功率損耗,能夠明顯地降低。其電路架構之動作原理和設計準則,均會詳細地分析與探討。


Flyback converter topology has been the first choice for conversion below 200W in modern industry. Low cost and simple framework are enough to explain its popularity. Referring to high frequency switching power supply, the power losses mainly concentrate on the rectifier diodes in the secondary side and the MOSFET in the primary side during turn-on and turn-off. In this thesis, a design of 120W flyback converter with synchronous rectification is presented. The topology applied is suitable for applications with low output voltage and high output current. The power losses in the secondary side can be significantly reduced. The detailed operating principles and design criteria for the presented converter are described. Experimental results are given to verify the
theoretical analysis.

第一章 緒論 第二章 返馳式轉換器的工作原理 第三章 同步整流基本工作原理 第四章 設計考量 第五章 設計實例 第六章 實驗波形與測試報告分析 第七章 結論與未來展望

[1]Abraham I. Pressman, Switching Power Supply Design,
McGraw Hill, 2nd edition, 1998.
[2]S. Freeland and R. D. Middlebrook, “A unified analysis
of Converters with resonant switches,” IEEE PESC’87,
pp. 20-29, 1987.
[3]K. H. Liu, R. Oruganti, and F. C. Lee, “Quasi-resonant
converters Topologies and characteristics,” IEEE
Trans. Power Electron., vol. 2, no. 1, pp. 62-71, 1987.
[4]K. H. Liu and F. C. Lee, “Zero-voltage switching
technique In DC/DC converters,” IEEE Trans. Power
Electron., vol. 5, no. 3, pp. 293-304, 1990.
[5]D. H. Park, H. J. Kim, and Y. S. Sun, “A Development
of the off-line Active Clamp ZVS Forward Converter for
Telecommunication Applications,” IEEE INTELEC 97, pp.
271-276, 1997.
[6]Acik, and I. Cadirci, “Active Clamped ZVS Forward
Converter With Soft-Switched Synchronous Rectifier for
Maximum Efficiency Operation,” IEEE PESC’98, vol. 2,
pp. 1237-1242, 1998.
[7]C. M. C. Duarte, and I. Barbi, “An Improved Family of
ZVS-PWM Active-Clamping DC-to-DC Converters,” IEEE
PESC’98, vol. 1, pp. 669-675, 1998.
[8]Youhao Xi, Praveen K. Jain, Geza Joos, Yan Fei Liu,
“An Improved Zero Voltage Switching Flyback Converter
Topology,” IEEE PESC’98, pp. 923-929, 1998.
[9]Masahito Jinno, Po-Yuan Chen, and Kun-Chih Lin, “An
Efficient Active LC Snubber for Multi-Output Converters
with Flyback Synchronous Recfifier,” IEEE PESC’03,
pp. 622-627, 2003.
[10]Michael T. Zhang, Milan M. Jovanovic and Fred C. Y.
Lee, “Design Considerations and Performance
Evaluations of Synchronous Rectification in Flyback
Converters,” IEEE Trans. Power Electron., vol. 13,
pp. 623-630, 1997.
[11]M. T. Zhang, M. M. Jovanovic and F. C. Lee, “Design
Consideration and Performance Evaluations of
Synchronous Rectification in Flyback Converters,”
IEEE Trans. Power Electron., vol. 13, no. 3,pp. 538-
546, 1998.
[12]B.-R. Lin, C.-E. Huang, K. Huang and D. Wang, “Design
and implementation of zero-voltage-switching flyback
converter with synchronous rectifier,” IEEE Trans.
Power Electron., pp. 1-9, 2006.

[13]Ionel Dan Jitaru, “High Efficiency Flyback Converter
using Synchronous Rectification,” IEEE APEC’02, pp.
867-871, 2002.

無法下載圖示 全文公開日期 2012/01/30 (校內網路)
全文公開日期 本全文未授權公開 (校外網路)
全文公開日期 本全文未授權公開 (國家圖書館:臺灣博碩士論文系統)
QR CODE